首页> 外文会议>Oxide Superconductor Physics and Nano-Engineering II >Nano-engineering via intercalation: layer-by-layer interstratification of high-Tc superconducting and superionic materials AgxIyBi2Sr2Can-1CunO2n+4 (n=1 2 and 3)
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Nano-engineering via intercalation: layer-by-layer interstratification of high-Tc superconducting and superionic materials AgxIyBi2Sr2Can-1CunO2n+4 (n=1 2 and 3)

机译:通过插层的纳米工程:高Tc超导和超离子材料AgxIyBi2Sr2Can-1CunO2n + 4的逐层互层(n = 1 2和3)

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Abstract: Through intercalation, we have successfully synthesized new materials having layer-by-layer stacking of superconducting and superionic conductor, Ag$-x$/I$-y$/Bi$-2$/Sr$-2$/Ca$- n$MIN@1$/Cu$-n$/O$-2n$PLU@4$/ (n $EQ 1, 2 and 3). According to powder x-ray diffraction analysis, the lattice expansions along the c-axis upon intercalation of Ag-I are approximately 7.3 angstrom independent on various x values. Superconducting properties were maintained after the intercalation with slight T$-c$/ depressions. In order to investigate the evolution of electronic and crystal structures of host compound upon Ag-I intercalation and to determine the intracrystalline structure of the intercalated silver iodide, extended x-ray absorption fine structure (EXAFS) and x-ray absorption near edge structure (XANES) analyses have been performed. According to the nonlinear curve fitting for the Ag K-edge EXAFS spectra, the coordination number for silver in the Ag-I intercalate has been determined to be 4, which is in good agreement with the previous results for Ag$+$PLU$/ ionic conductors. This strongly suggests that our new compounds may also have AG$+$PLU$/ ionic conductivity, which has been measured by the a.c. impedance spectroscopy and the pulsed method. All the intercalates have been proved to be mixed conductors with substantial ionic contributions. For example, the ionic conductivity of Ag$-x$/I$-y$/Bi$-2$/Sr$-2$/CaCu$-2$/O$-8$/ (x $EQ 1.09) is about 10$+$MIN@1.5$/ (ohm cm)$+$MIN@1$/ at 270 degrees C, which is comparable to those of other Ag$+$PLU$/ superionic conductors such as AG$+$PLU$/-$beta@- alumina and Py$-5$/Ag$-18$/I$-23$/ (Py $EQ C$-5$/H$-5$/HN), with an ionic transference number of 0.40. !35
机译:摘要:通过插层,我们成功地合成了具有超导和超离子导体,Ag $ -x $ / I $ -y $ / Bi $ -2 $ / Sr $ -2 $ / Ca $逐层堆叠的新材料-n $ MIN @ 1 $ / Cu $ -n $ / O $ -2n $ PLU @ 4 $ /(n $ EQ 1、2和3)。根据粉末X射线衍射分析,在插入Ag-I时沿c轴的晶格扩展约为7.3埃,与各种x值无关。插入后保持超导性能,并出现轻微的T $ -c $ /凹陷。为了研究Ag-I嵌入后主体化合物的电子和晶体结构的演变并确定嵌入的碘化银的晶体内结构,扩展X射线吸收精细结构(EXAFS)和X射线吸收近边缘结构( XANES)分析已执行。根据针对Ag K-edge EXAFS光谱的非线性曲线拟合,确定Ag-I插层中银的配位数为4,这与先前对Ag $ + $ PLU $ /的结果非常吻合离子导体。这强烈表明我们的新化合物也可能具有AG $ + PLU $ /离子电导率,该电导率已通过a.c.阻抗光谱法和脉冲法。事实证明,所有插层都是具有重要离子贡献的混合导体。例如,Ag $ -x $ / I $ -y $ / Bi $ -2 $ / Sr $ -2 $ / CaCu $ -2 $ / O $ -8 $ /(x $ EQ 1.09)的离子电导率为在270摄氏度下约为10$+MIN@1.5$/(ohm cm)$ + MIN @ 1 $ /,与其他Ag $ + PLU $ /超离子导体(例如AG $ + PLU)的电导率相当$ /-$ beta @-氧化铝和Py $ -5 $ / Ag $ -18 $ / I $ -23 $ /(Py $ EQ C $ -5 $ / H $ -5 $ / HN),具有离子转移数为0.40。 !35

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